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Calcium channel antagonists delay regression of androgen-dependent tissues and suppress gene activity associated with
J Connor1, I S Sawczuk, M C Benson
1Department of Urology, Columbia University, New York, NY 10032.
Abstract:
Androgen deprivation subsequent to castration of an adult male rat results in the regression of sexual accessory tissues. Regression of these tissues involves the massive death of androgen-dependent cells. Using the rat ventral prostate gland as a model to study androgen-programed cell death, we have characterized a series of molecular events that accompany its regression. This analysis has shown that there was a sequential induction of specific gene transcripts in the ventral prostate gland following castration. The first event in this cascade was an abrupt induction of transcripts encoding c-fos. Since c-fos expression has been linked to perturbations in intracellular Ca2+ levels, we investigated whether membrane-mediated Ca2+ flux might be an early physiological step involved in the death of prostatic cells. To test this, rats were treated simultaneously upon castration with either verapamil or nifedipine, two different calcium channel antagonist drugs. Compared to the ventral prostate glands of untreated castrated rats, the glands of the calcium channel antagonist-treated rats showed a significant delay in all parameters associated with regression (loss of wet weight and DNA content and delay in histological changes associated with prostatic regression). The seminal vesicle glands of treated rats also showed signs of delayed regression. Furthermore, calcium channel antagonists suppressed the induction of transcripts encoding both c-fos and testosterone-repressed prostate message-2 (TRPM-2), a gene expressed exclusively by dying cells, during the first 62 hr following castration. These findings further support a role for calcium ion influx in the pathway leading to hormonally programed prostate cell death, and suggest the intriguing possibility that modulation of this activity can alter the process by which cells die.
Insights
Calcium channel blockers delay programmed cell death in rat prostate tissue following castration. This suggests calcium ion influx plays a key role in androgen-dependent cell death pathways.
Area of Science:
- Urology
- Cell Biology
- Endocrinology
Background:
- Androgen deprivation causes regression of sexual accessory tissues through massive cell death.
- The rat ventral prostate gland is a model for studying androgen-programmed cell death.
- Molecular events during regression include sequential gene transcript induction, starting with c-fos.
Purpose of the Study:
- To investigate the role of intracellular calcium (Ca2+) levels and membrane-mediated Ca2+ flux in androgen-programmed prostate cell death.
- To determine if calcium channel antagonists can alter the process of prostatic regression.
Main Methods:
- Adult male rats were castrated and treated with calcium channel antagonists (verapamil or nifedipine).
- Parameters of ventral prostate gland regression (wet weight, DNA content, histological changes) were assessed.
- Expression of c-fos and testosterone-repressed prostate message-2 (TRPM-2) transcripts was analyzed.
Main Results:
- Calcium channel antagonists significantly delayed ventral prostate and seminal vesicle gland regression.
- Antagonist treatment suppressed the induction of c-fos and TRPM-2 transcripts post-castration.
- These findings indicate a role for calcium ion influx in the cell death pathway.
Conclusions:
- Calcium ion influx is implicated in the pathway of hormonally programmed prostate cell death.
- Modulating calcium channel activity may alter the rate and process of cell death in these tissues.